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Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System

This paper presents a new method of fiducialisation applied to determine the magnetic axis of the Drive Beam quadrupole of the CLIC project with respect to external alignment fiducials, within a micrometric accuracy and precision. It introduces also a new micrometric adjustment system along 5 Degree...

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Detalles Bibliográficos
Autores principales: Mainaud Durand, Helene, Duquenne, Mathieu, Sandomierski, Jacek, Sosin, Mateusz, Rude, Vivien
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/2040161
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author Mainaud Durand, Helene
Duquenne, Mathieu
Sandomierski, Jacek
Sosin, Mateusz
Rude, Vivien
author_facet Mainaud Durand, Helene
Duquenne, Mathieu
Sandomierski, Jacek
Sosin, Mateusz
Rude, Vivien
author_sort Mainaud Durand, Helene
collection CERN
description This paper presents a new method of fiducialisation applied to determine the magnetic axis of the Drive Beam quadrupole of the CLIC project with respect to external alignment fiducials, within a micrometric accuracy and precision. It introduces also a new micrometric adjustment system along 5 Degrees of Freedom, developed for the same Drive Beam quadrupole. The combination of both developments opens very interesting perspectives to get a more simple and accurate alignment of the quadrupoles.
id cern-2040161
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-20401612019-09-30T06:29:59Zhttp://cds.cern.ch/record/2040161engMainaud Durand, HeleneDuquenne, MathieuSandomierski, JacekSosin, MateuszRude, VivienDrive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment SystemAccelerators and Storage RingsThis paper presents a new method of fiducialisation applied to determine the magnetic axis of the Drive Beam quadrupole of the CLIC project with respect to external alignment fiducials, within a micrometric accuracy and precision. It introduces also a new micrometric adjustment system along 5 Degrees of Freedom, developed for the same Drive Beam quadrupole. The combination of both developments opens very interesting perspectives to get a more simple and accurate alignment of the quadrupoles.CERN-ACC-2015-0083oai:cds.cern.ch:20401612014-10-13
spellingShingle Accelerators and Storage Rings
Mainaud Durand, Helene
Duquenne, Mathieu
Sandomierski, Jacek
Sosin, Mateusz
Rude, Vivien
Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System
title Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System
title_full Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System
title_fullStr Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System
title_full_unstemmed Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System
title_short Drive Beam Quadrupoles for the CLIC Project: a Novel Method of Fiducialisation and a New Micrometric Adjustment System
title_sort drive beam quadrupoles for the clic project: a novel method of fiducialisation and a new micrometric adjustment system
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2040161
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AT sandomierskijacek drivebeamquadrupolesfortheclicprojectanovelmethodoffiducialisationandanewmicrometricadjustmentsystem
AT sosinmateusz drivebeamquadrupolesfortheclicprojectanovelmethodoffiducialisationandanewmicrometricadjustmentsystem
AT rudevivien drivebeamquadrupolesfortheclicprojectanovelmethodoffiducialisationandanewmicrometricadjustmentsystem